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花生属两种α-甲基-D-甘露糖苷特异性凝集素的同源建模、分子对接及动力学研究

Homology modeling, molecular docking, and dynamics of two α-methyl-D-mannoside-specific lectins from Arachis genus.

作者信息

Nascimento Kyria Santiago, Araripe David Alencar, Pinto-Junior Vanir Reis, Osterne Vinicius Jose Silva, Martins Francisco William Viana, Neco Antonio Hadson Bastos, Farias Gil Aquino, Cavada Benildo Sousa

机构信息

Department of Biochemistry and Molecular Biology, Federal University of Ceara, Fortaleza, Brazil.

Department of Physics, Federal University of Ceara, Fortaleza, Brazil.

出版信息

J Mol Model. 2018 Aug 25;24(9):251. doi: 10.1007/s00894-018-3800-y.

Abstract

The Arachis genus belongs to the Dalbergieae tribe, a group of plants that show promising potential novel lectins. Three lectins of the well-known Arachis hypogaea have already been purified, while lectins from related species are still unknown. Genomes of two closely related species, Arachis duranensis and Arachis ipaensis, were recently sequenced. Therefore, this study aimed to establish the three-dimensional structure of Arachis duranensis lectin (ADL) and Arachis ipaensis lectin (AIL) by homology modeling, test their activity against mannosides, and perform molecular dynamics (MD) simulations on these two proteins, both unligated and interacting with mannose or α-methyl-D-mannoside. The fold obtained for the molecular models agrees with data obtained from previous leguminous lectins, showing a conserved jelly roll motif. Docking scores indicate that these lectins have different theoretical binding energy with monosaccharides, disaccharides, and high-mannose glycans. MD simulations revealed that these proteins are α-methyl-D-mannoside-specific, having less stable interactions with mannose. This study thus serves as a guide for further research on lectins of the Arachis genus.

摘要

落花生属属于黄檀族,该族植物显示出有潜力的新型凝集素。著名的落花生(花生)的三种凝集素已被纯化,而来自相关物种的凝集素仍不为人知。最近对两个近缘物种,即杜兰落花生和阿根廷落花生的基因组进行了测序。因此,本研究旨在通过同源建模建立杜兰落花生凝集素(ADL)和阿根廷落花生凝集素(AIL)的三维结构,测试它们对甘露糖苷的活性,并对这两种未结合以及与甘露糖或α-甲基-D-甘露糖苷相互作用的蛋白质进行分子动力学(MD)模拟。分子模型获得的折叠与先前豆科凝集素的数据一致,显示出保守的果冻卷基序。对接分数表明这些凝集素与单糖、二糖和高甘露糖聚糖具有不同的理论结合能。MD模拟表明这些蛋白质对α-甲基-D-甘露糖苷具有特异性,与甘露糖的相互作用较不稳定。因此,本研究为落花生属凝集素的进一步研究提供了指导。

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